Structural properties of nanocomposites based on resole-type phenol-formaldehyde oligomers and detonation nanodiamonds

被引:1
|
作者
Shkodich, Valentina [1 ]
Temnikova, Nadezhda [1 ]
Boyko, Irina [1 ]
Leicht, Heinrich [2 ]
Kraus, Eduard [2 ]
Shkodich, Natalia [3 ,4 ]
Stoyanov, Oleg [1 ]
机构
[1] Kazan Natl Res Technol Univ, Karl Marx 68, Kazan 420015, Russia
[2] SKZ German Plast Ctr, Friedrich Bergius Ring 22, D-97076 Wurzburg, Germany
[3] Russian Acad Sci, Merzhanov Inst Struct Macrokinet & Mat Sci, Moscow 142432, Russia
[4] Natl Univ Sci & Technol MISIS, Ctr Funct Nanoceram, Moscow 119049, Russia
关键词
detonation nanodiamonds; high-energy machining; intermolecular interactions; resole phenol-formaldehyde oligomer; segmental mobility; WALLED CARBON NANOTUBES; AQUEOUS DISPERSIONS; COMPOSITES; POLYSTYRENE; REACTIVITY; MORPHOLOGY; POLYMERS;
D O I
10.1002/app.48582
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Using the methods of infrared spectroscopy (IRS) and X-ray photoelectron spectroscopy (XPS), it was shown that short-term high-energy machining of detonation nanodiamonds (DND) leads to structural changes in the crystal structure and functional composition of the surface layer on particles. The possibility of spontaneous formation for stable colloidal systems with a narrow size distribution of mechanically activated DND in phenol-formaldehyde oligomers (PFO) was established. By molecular spectroscopy it was revealed that pi -> pi* interactions of the aromatic rings of PFO are caused by orientational phenomena as a result of hydrogen bonds between an activated DND surface and functional groups of PFO. The effect of DND concentration on the curing reaction parameters ofpsgr the phenol-formaldehyde oligomer was determined by differential scanning calorimetry (DSC). The concentration effect of mechanically activated nanodiamonds on the physical and mechanical characteristics of a composite material based on phenol-formaldehyde binder and polyamide paper (Nomex) was studied. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 137, 48582.
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页数:9
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